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@ -152,6 +152,10 @@ namespace ssu |
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ProcessRelayResponse (buf, len); |
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ProcessRelayResponse (buf, len); |
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m_Server.DeleteSession (this); |
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m_Server.DeleteSession (this); |
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break; |
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break; |
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case PAYLOAD_TYPE_RELAY_REQUEST: |
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LogPrint ("SSU relay request received"); |
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ProcessRelayIntro (buf + sizeof (SSUHeader), len - sizeof (SSUHeader)); |
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break; |
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case PAYLOAD_TYPE_RELAY_INTRO: |
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case PAYLOAD_TYPE_RELAY_INTRO: |
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LogPrint ("SSU relay intro received"); |
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LogPrint ("SSU relay intro received"); |
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ProcessRelayIntro (buf + sizeof (SSUHeader), len - sizeof (SSUHeader)); |
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ProcessRelayIntro (buf + sizeof (SSUHeader), len - sizeof (SSUHeader)); |
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@ -377,6 +381,82 @@ namespace ssu |
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m_Server.Send (buf, 480, m_RemoteEndpoint); |
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m_Server.Send (buf, 480, m_RemoteEndpoint); |
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} |
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} |
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void SSUSession::ProcessRelayRequest (uint8_t * buf, size_t len) |
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{ |
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uint32_t relayTag = be32toh (*(uint32_t *)buf); |
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auto session = m_Server.FindRelaySession (relayTag); |
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if (session) |
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{ |
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buf += 4; // relay tag
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uint8_t size = *buf; |
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if (size == 4) |
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{ |
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buf++; // size
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boost::asio::ip::address_v4 address (be32toh (*(uint32_t* )buf)); |
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buf += 4; // address
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uint16_t port = be16toh (*(uint16_t *)buf); |
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buf += 2; // port
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uint8_t challengeSize = *buf; |
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buf++; // challenge size
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buf += challengeSize; |
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uint8_t * introKey = buf; |
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buf += 32; // introkey
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uint32_t nonce = be32toh (*(uint32_t *)buf); |
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boost::asio::ip::udp::endpoint from (address, port); |
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SendRelayResponse (nonce, from, introKey, session->m_RemoteEndpoint); |
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SendRelayIntro (session, from); |
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} |
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else |
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LogPrint ("Address size ", size, " is not supported"); |
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} |
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} |
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void SSUSession::SendRelayResponse (uint32_t nonce, const boost::asio::ip::udp::endpoint& from, const uint8_t * introKey, const boost::asio::ip::udp::endpoint& to) |
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{ |
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uint8_t buf[64 + 18]; |
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uint8_t * payload = buf + sizeof (SSUHeader); |
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// Charlie
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*payload = 4; |
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payload++; // size
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*(uint32_t *)payload = htobe32 (to.address ().to_v4 ().to_ulong ()); // Charlie's IP
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payload += 4; // address
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*(uint16_t *)payload = htobe16 (to.port ()); // Charlie's port
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payload += 2; // port
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// Alice
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*payload = 4; |
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payload++; // size
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*(uint32_t *)payload = htobe32 (from.address ().to_v4 ().to_ulong ()); // Alice's IP
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payload += 4; // address
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*(uint16_t *)payload = htobe16 (from.port ()); // Alice's port
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payload += 2; // port
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*(uint32_t *)payload = htobe32 (nonce); |
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uint8_t iv[16]; |
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CryptoPP::RandomNumberGenerator& rnd = i2p::context.GetRandomNumberGenerator (); |
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rnd.GenerateBlock (iv, 16); // random iv
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FillHeaderAndEncrypt (PAYLOAD_TYPE_RELAY_RESPONSE, buf, 64, introKey, iv, introKey); |
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m_Server.Send (buf, 64, from); |
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} |
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void SSUSession::SendRelayIntro (SSUSession * session, const boost::asio::ip::udp::endpoint& from) |
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{ |
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if (!session) return; |
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uint8_t buf[48 + 18]; |
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uint8_t * payload = buf + sizeof (SSUHeader); |
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*payload = 4; |
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payload++; // size
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*(uint32_t *)payload = htobe32 (from.address ().to_v4 ().to_ulong ()); // Alice's IP
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payload += 4; // address
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*(uint16_t *)payload = htobe16 (from.port ()); // Alice's port
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payload += 2; // port
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*payload = 0; // challenge size
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uint8_t iv[16]; |
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CryptoPP::RandomNumberGenerator& rnd = i2p::context.GetRandomNumberGenerator (); |
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rnd.GenerateBlock (iv, 16); // random iv
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FillHeaderAndEncrypt (PAYLOAD_TYPE_RELAY_INTRO, buf, 48, session->m_SessionKey, iv, session->m_MacKey); |
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m_Server.Send (buf, 48, session->m_RemoteEndpoint); |
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} |
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void SSUSession::ProcessRelayResponse (uint8_t * buf, size_t len) |
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void SSUSession::ProcessRelayResponse (uint8_t * buf, size_t len) |
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{ |
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{ |
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LogPrint ("Relay response received"); |
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LogPrint ("Relay response received"); |
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